Feedback control for reducing the pressure drag of bluff bodies terminated by a backward-facing step

A. Morgans, J. Dahan, T. Flinois
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Abstract

Four flows over a backward-facing step are considered. These exhibit a range of flow physics, and are of relevance to the flow over the rear of “squareback” road vehicles. Computational flow simulations are used as a test-bed to devise a linear feedback control strategy which achieves a mean base pressure recovery (equivalent to reducing pressure drag) for all four flows. The strategy is based on the premise that reducing pressure drag fluctuations improves mean pressure recovery. Thus the feedback control objective is to attenuate base pressure force fluctuations. The response of each of the flows to actuation is characterised via harmonic forcing system identification. Feedback control is found to successfully achieve a mean pressure recovery for all four of the flows, and is particularly effective for 2-D geometries (with either laminar or turbulent separation). The approach uses only body-mounted sensing and actuation and could be applied experimentally.
用于减少由后向台阶终止的钝体的压力阻力的反馈控制
在一个面向后的台阶上考虑四个流。这些展示了一系列的流动物理,并且与“方背”道路车辆后方的流动相关。计算流模拟作为测试平台,设计了一种线性反馈控制策略,该策略可以实现所有四种流动的平均基压恢复(相当于减少压力阻力)。该策略的前提是减少压力阻力波动,提高平均压力恢复。因此,反馈控制的目标是衰减基压力波动。每个流对驱动的响应通过谐波强迫系统识别来表征。研究发现,反馈控制可以成功地实现所有四种流动的平均压力恢复,并且对二维几何形状(层流或湍流分离)特别有效。该方法仅采用体载传感和驱动,可以在实验中应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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